Honey degerming and impurity removing device
By designing a honey sterilization and impurity removal device, which utilizes an arc-shaped conveying pipe and multi-stage filtration components, the problem of impurities and bacteria in honey is solved, achieving efficient sterilization and impurity removal, improving honey quality and shelf life, and extending the service life of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-03-31
AI Technical Summary
Honey is easily contaminated with impurities and bacteria during the production process, which affects its quality and shelf life. Existing equipment is difficult to efficiently remove large particles of impurities and bacteria without damaging the nutritional components and natural properties of honey.
A honey sterilization and impurity removal device was designed, comprising an arc-shaped conveying pipe, a multi-stage filtration assembly, and a sterilization filtration device. By utilizing a bottom residue baffle, an upper residue baffle, a multi-stage filter screen frame, and a bacterial filter membrane frame, the device achieves preliminary interception, multi-stage filtration, and bacterial removal of honey.
It effectively removes large particles and bacteria from honey, improving honey quality and shelf life, extending the lifespan of the device, adapting to different filtration modes, and preserving the natural characteristics of honey.
Smart Images

Figure CN224055297U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of food filtration and processing technology, specifically to a honey sterilization and impurity removal device. Background Technology
[0002] Honey, a popular natural food, is loved by consumers. It not only has a sweet taste but also boasts rich nutritional value and unique health benefits. However, many factors can affect the quality of honey during its production process.
[0003] In the honey-harvesting process, the extraction of honey from beehives is difficult to control precisely, inevitably resulting in some honeycomb fragments, dead bees, and other debris being mixed in. These impurities not only affect the honey's appearance, making it cloudy and impure, but also cause numerous problems in subsequent processing. Honeycomb fragments may cause wear and tear on processing equipment during operation, shortening its lifespan and increasing production costs. The presence of dead bees, on the other hand, poses a significant risk to the quality of the honey.
[0004] While honey itself possesses strong antibacterial properties, the presence of bee carcass fragments mixed in with it presents a unique situation. After being separated from the hive, bee carcasses gradually decompose in the honey's environment. This decomposition process breeds a large number of bacteria and various contaminants. These bacteria and contaminants disrupt the honey's relatively stable antibacterial environment, causing a sharp increase in the number of microorganisms and thus affecting its shelf life. High-quality honey that could normally be stored for a long time may spoil quickly due to the presence of these bacteria and contaminants, exhibiting off-flavors, fermentation, and other problems, significantly reducing its commercial value.
[0005] To improve honey quality, meet consumer demand for high-quality honey, and reduce losses and costs during production, the development of a device capable of efficiently removing impurities and bacteria from honey is urgently needed. Such a device requires a targeted design that can effectively intercept impurities of various shapes and densities, precisely remove bacteria, and preserve the honey's nutritional components and natural characteristics, ensuring that the produced honey meets high-quality market standards. Utility Model Content
[0006] (a) Technical problems to be solved
[0007] To address the shortcomings of existing technologies, this utility model provides a honey sterilization and impurity removal device, which solves the problems mentioned in the background art, such as the easy mixing of impurities, contaminants, and bacteria in honey.
[0008] (II) Technical Solution
[0009] To achieve the above-mentioned objectives, the present invention provides the following technical solution: a honey sterilization and impurity removal device, comprising an arc-shaped conveying pipe, one end of which is a feed inlet, and downstream of the arc-shaped conveying pipe are sequentially provided a slag lowering baffle, an slag uppering baffle, a primary filter assembly, and a secondary filter assembly, the output end of which is sealed with a sterilization filter device, and the output end of the sterilization filter device is a discharge outlet.
[0010] Preferably, a slag stop is provided at the first upper bend of the bow-shaped conveying pipe to cooperate with the bend. A slag groove is opened on the side wall of the bow-shaped conveying pipe, and a slag block corresponding to the slag groove is provided on the slag stop. The slag block is engaged in the slag groove. A sealing gasket is provided on the side wall of the bow-shaped conveying pipe away from the slag groove. A slag stop mesh plate is provided inside the slag stop, and a fixing collar is provided on the outside of the slag stop. The slag stop is fixedly installed on the bow-shaped conveying pipe by the fixing collar.
[0011] Preferably, the first downward bend of the bow-shaped conveying pipe is provided with a slag baffle that cooperates with the bend. The side wall of the bow-shaped conveying pipe is provided with a slag groove. The slag baffle is provided with a slag block corresponding to the slag groove. The slag block is engaged in the slag groove. A sealing gasket is provided on the side wall of the bow-shaped conveying pipe away from the slag groove. A slag baffle mesh is provided inside the slag baffle. A fixing collar is provided on the outside of the slag baffle. The slag baffle is fixedly installed on the bow-shaped conveying pipe by the fixing collar.
[0012] Preferably, the primary filtration assembly includes a primary filter plate fixing frame and a primary filter plate frame. Flanges are provided on both sides of the primary filter plate fixing frame. The primary filter plate fixing frame is sealed to the arc-shaped conveying pipe through the flanges. The primary filter plate frame is provided inside the primary filter plate fixing frame and is intercepted on the honey conveying channel.
[0013] Preferably, the secondary filtration assembly includes a secondary filter housing and a secondary filter plate frame. A flange is provided on one side of the secondary filter housing, and the secondary filter housing is sealed to the arc-shaped conveying pipe through the flange. The secondary filter plate frame is provided inside the secondary filter housing, and the secondary filter plate frame is intercepted on the honey conveying channel. A buffer cavity is provided on one side of the secondary filter plate frame.
[0014] Preferably, the bottom of the buffer chamber is provided with multiple diversion and delivery pipes, each of which is equipped with a butterfly valve. The top end of the diversion and delivery pipe is sealed to the buffer chamber, and the bottom end of the diversion and delivery pipe is sealed to the sterilization and filtration device.
[0015] Preferably, the sterilization filtration device includes a sterilization filtration device shell, a filter membrane plate frame, and a filtration chamber. The sterilization filtration device shell is provided with a filtration chamber, and a filter membrane plate frame that divides the filtration chamber into two parts is provided in the middle of the filtration chamber. A multi-component diversion conveying pipe is sealed to one side of the filtration chamber, and a discharge port is sealed to the side of the filtration chamber away from the diversion conveying pipe.
[0016] (III) Beneficial Effects
[0017] Compared with the prior art, this utility model provides a honey sterilization and impurity removal device, which has the following beneficial effects:
[0018] 1. This honey sterilization and impurity removal device is equipped with a unique bow-shaped conveying pipe, multi-stage filtration components, and a bacterial filtration device. It can remove impurities from honey through filtration and filter bacteria through a semi-permeable membrane, which can effectively improve the quality and shelf life of honey. The device has high production and processing efficiency and a long service life.
[0019] 2. It is equipped with a bottom debris baffle and a top debris baffle. The bottom debris baffle can block large particles of impurities in honey that are easy to sink, such as bee carcasses, sawdust, and soil. The top debris baffle can block large particles of impurities in honey that are easy to float, such as beeswax fragments, propolis fragments, and pollen particles. This preliminary removal of large particles can reduce the pressure on the filtration device, prevent the filter screen from clogging, and extend its service life.
[0020] 3. It is equipped with multiple diversion conveying pipes and butterfly valves. The output flow of the diversion conveying pipes can be controlled by the butterfly valves, and the output flow of the entire bow-shaped conveying pipe can be controlled. The internal pressure can be adjusted to adapt to different filtration modes. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0022] Figure 2 This is a schematic diagram of the lower slag baffle and upper slag baffle of this utility model;
[0023] Figure 3 This is a cross-sectional view of the overall structure of this utility model;
[0024] Figure 4 This is a schematic diagram of the diversion and conveying pipe and the sterilization and filtration device of this utility model.
[0025] In the diagram: 1. Bow-shaped conveying pipe; 2. Lower slag baffle; 3. Upper slag baffle; 4. Primary filter assembly; 5. Secondary filter assembly; 6. Sterilizing filter device; 7. Lower slag slot; 8. Lower slag block; 9. Sealing gasket; 10. Lower slag baffle mesh plate; 11. Fixing collar; 12. Upper slag slot; 13. Upper slag block; 14. Upper slag baffle mesh plate; 15. Primary filter mesh plate fixing frame; 16. Flange; 17. Primary filter mesh plate frame; 18. Secondary filter frame; 19. Secondary filter mesh plate frame; 20. Buffer chamber; 21. Diversion conveying pipe; 22. Butterfly valve; 23. Sterilizing filter device frame; 24. Filter membrane plate frame; 25. Filter chamber. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figure 1-4 This utility model provides a technical solution:
[0028] A honey sterilization and impurity removal device includes an arc-shaped conveying pipe 1, with one end of the arc-shaped conveying pipe 1 as the inlet. Downstream of the arc-shaped conveying pipe 1, a lower slag baffle 2, an upper slag baffle 3, a primary filter assembly 4, and a secondary filter assembly 5 are sequentially arranged. A sterilization filter device 6 is sealed and connected to the output end of the secondary filter assembly 5, and the output end of the sterilization filter device 6 is the outlet. Honey raw materials are drawn into the device through the inlet using a liquid pump for sterilization and impurity removal. Processed honey is output from the outlet and can be directly packaged in smaller containers. The arc-shaped conveying pipe 1 is a vertically placed, arc-shaped curved pipe.
[0029] Furthermore, a slag baffle 2 is provided at the first upper bend of the arc-shaped conveying pipe 1 to cooperate with the bend. A slag groove 7 is opened on the side wall of the arc-shaped conveying pipe 1, and a slag block 8 corresponding to the slag groove 7 is provided on the slag baffle 2. The slag block 8 is engaged in the slag groove 7. A sealing gasket 9 is provided on the side wall of the arc-shaped conveying pipe 1 away from the slag groove 7. A slag baffle mesh plate 10 is provided inside the slag baffle 2, and a fixing collar 11 is provided on the outside of the slag baffle 2. The slag baffle 2 is fixedly installed on the arc-shaped conveying pipe 1 by the fixing collar 11. There are some large particles of impurities in honey, such as bee carcasses, sawdust, dust, and soil that have absorbed honey. These substances usually settle at the bottom of the honey. The slag baffle mesh plate 10 can block these substances and remove them initially. The upper slag baffle mesh plate 14 is used to remove some floating large particles of impurities, such as beeswax fragments, propolis fragments, and undecomposed aggregated pollen particles produced by honeycomb dehoney removal.
[0030] Furthermore, a slag baffle 3 is provided at the first downward bend of the bow-shaped conveying pipe 1 to cooperate with the bend. A slag groove 12 is opened on the side wall of the bow-shaped conveying pipe 1. A slag baffle 3 is provided with a slag block 13 corresponding to the slag groove 12. The slag block 13 is engaged in the slag groove 12. A sealing gasket 9 is provided on the side wall of the bow-shaped conveying pipe 1 away from the slag groove 12. A slag baffle mesh plate 14 is provided inside the slag baffle 3. A fixing collar 11 is provided on the outside of the slag baffle 3. The slag baffle 3 is fixedly installed on the bow-shaped conveying pipe 1 by the fixing collar 11.
[0031] Furthermore, the primary filter assembly 4 includes a primary filter plate fixing housing 15 and a primary filter plate holder 17. Flanges 16 are provided on both sides of the primary filter plate fixing housing 15, which is sealed to the arc-shaped conveying pipe 1 via the flanges 16. The primary filter plate holder 17 is housed within the primary filter plate fixing housing 15 and is positioned to intercept the honey conveying channel. Primary filter screens are installed within the primary filter plate holder 17, which can be tilted to increase the usable area.
[0032] Furthermore, the secondary filtration assembly 5 includes a secondary filter housing 18 and a secondary filter plate frame 19. A flange 16 is provided on one side of the secondary filter housing 18, which is sealed to the arc-shaped conveying pipe 1 via the flange 16. The secondary filter plate frame 19 is housed within the secondary filter housing 18, and it intercepts the honey conveying channel. A buffer chamber 20 is provided on one side of the secondary filter plate frame 19. Secondary filter screens are installed within the secondary filter plate frame 19, and the mesh size of the secondary filter screens is smaller than that of the primary filter screens. This multi-stage filtration effectively improves the service life of the filter screens.
[0033] Furthermore, the bottom of the buffer chamber 20 is equipped with multiple diversion and delivery pipes 21, each with a butterfly valve 22. The top end of the diversion and delivery pipe 21 is sealed to the buffer chamber 20, and the bottom end is sealed to the sterilization and filtration device 6. The diversion and delivery pipes 21 and the butterfly valves 22 are used to regulate the output flow rate. When all diversion and delivery pipes 21 are connected, the output is at its maximum, the filtration pressure is at its lowest, and the filtration quality is poor. When some diversion and delivery pipes 21 are closed, the cross-sectional area of the output decreases, the filtration pressure increases, the flow rate increases, and the filtration quality improves. However, excessive pressure will increase the wear of the filter screen. Different filtration modes should be selected according to different product grades.
[0034] Furthermore, the sterilization filtration device 6 includes a sterilization filtration device frame 23, a filter membrane plate frame 24, and a filtration chamber 25. The filter chamber 25 is located within the sterilization filtration device frame 23. A filter membrane plate frame 24, dividing the filter chamber 25 into two parts, is located in the middle of the filter chamber 25. A multi-component diversion conveying pipe 21 is sealed to one side of the filter chamber 25, and a discharge port is sealed to the side of the filter chamber 25 facing away from the diversion conveying pipe 21. A semi-permeable filter membrane is installed within the filter membrane plate frame 24, wherein the micropore size is typically less than 0.45 μm, which can block microorganisms without damaging the honey's components, thus preserving its natural characteristics.
[0035] Structural Description:
[0036] Bow-shaped conveying pipe 1: The material conveying structure of the device is a vertically placed bow-shaped curve, with one end being the feed inlet, used to guide the flow of honey and create special flow conditions for subsequent impurity removal and sterilization operations;
[0037] Slag baffle 2: A preliminary impurity removal structure set at the first upper bend of the bow-shaped conveying pipeline 1. It is connected to the slag slot 7 by the slag baffle block 8 and fixed by the fixing collar 11. The internal slag baffle mesh plate 10 can block large particles of impurities in honey that are easy to sink.
[0038] Slag baffle 3: A preliminary impurity removal structure installed at the first lower bend of the bow-shaped conveying pipeline 1. It is fixed by the slag baffle block 13 and the slag baffle groove 12 and the fixing collar 11. The slag baffle mesh plate 14 inside can block large particles of impurities that are easy to float in the honey.
[0039] Primary filtration component 4: The primary fine filtration structure of the device consists of a primary filter plate fixing frame 15 and a primary filter plate frame 17. It is sealed to the arc-shaped conveying pipe 1 through a flange 16. The primary filter plate frame 17 intercepts impurities on the honey conveying channel.
[0040] Secondary filtration component 5: The secondary fine filtration structure of the device includes a secondary filter housing 18 and a secondary filter plate frame 19, which are sealed to the arc-shaped conveying pipe 1 via flange 16. The secondary filter plate frame 19 intercepts the honey conveying channel, and the buffer chamber 20 on one side is used to adjust the filtration. The secondary filter screen has a smaller mesh size, which can filter more effectively.
[0041] Sterilization filtration device 6: The sterilization core structure of the device consists of a sterilization filtration device shell 23, a filter membrane plate frame 24 and a filter chamber 25, which is sealed to the diversion and conveying pipe 21. It blocks microorganisms through the semi-permeable filter membrane to achieve sterilization. The discharge port is located on the side away from the diversion and conveying pipe 21.
[0042] Slag discharge slot 7: A structure opened on the side wall of the bow-shaped conveying pipe 1, used to cooperate with the slag discharge block 8 of the slag discharge baffle 2 to realize the installation and positioning of the slag discharge baffle 2;
[0043] Slag discharge block 8: A structure set on the slag discharge baffle 2, which engages with the slag discharge slot 7, so that the slag discharge baffle 2 can be stably installed on the bow-shaped conveying pipe 1;
[0044] Sealing gasket 9: The structure installed at the connection between the bow-shaped conveying pipe 1 and the lower slag baffle 2 and the upper slag baffle 3 respectively, serves to seal and prevent honey leakage;
[0045] Slag baffle 10: The structure installed inside the slag baffle 2 is a key component for blocking large particles of impurities that easily sink in honey;
[0046] Fixed collar 11: A structure installed on the outside of the lower slag baffle 2 and the upper slag baffle 3, used to fix the lower slag baffle 2 and the upper slag baffle 3 to the bow-shaped conveying pipe 1;
[0047] Slag groove 12: A structure opened on the side wall of the bow-shaped conveying pipe 1, which cooperates with the slag clamping block 13 of the slag baffle 3 for installing and positioning the slag baffle 3;
[0048] Slag catcher 13: A structure set on the slag catcher 3, which engages with the slag catcher groove 12 to achieve a stable installation of the slag catcher 3 on the bow-shaped conveying pipe 1;
[0049] 14: A structure installed inside the 3, used to block large particles of impurities that are easy to float in the honey;
[0050] Primary filter plate fixing frame 15: The outer shell structure of the primary filter assembly 4, with flanges 16 on both sides for fixing the primary filter plate frame 17 and sealingly connecting it to the bow-shaped conveying pipe 1;
[0051] Flange 16: A structure respectively set on both sides of the primary filter plate fixing frame 15 and one side of the secondary filter frame 18, used to achieve a sealed connection between each component and the bow-shaped conveying pipe 1;
[0052] Primary filter plate frame 17: The structure located inside the primary filter plate fixing frame 15 intercepts the honey conveying channel and filters impurities in the honey through the primary filter plate. The inclined setting can increase the usable area.
[0053] Secondary filter housing 18: The outer shell structure of the secondary filter assembly 5, with a flange 16 on one side for fixing the secondary filter screen frame 19 and sealingly connecting it to the arc-shaped conveying pipe 1;
[0054] Secondary filter plate frame 19: The structure located inside the secondary filter shell 18 intercepts the honey conveying channel and further filters out small impurities in the honey through the set secondary filter plates. The buffer chamber 20 on one side assists in adjusting the filtration.
[0055] Buffer chamber 20: A structure located on one side of the secondary filter plate frame 19, with a multi-component flow delivery pipe 21 connected to the bottom, used to regulate the output flow rate and filtration pressure of honey;
[0056] Diversion delivery pipe 21: The structure connecting the bottom of the buffer chamber 20 to the sterilization filter device 6. Each diversion delivery pipe is equipped with a butterfly valve 22 to adjust the output flow rate and filtration pressure to adapt to different filtration modes.
[0057] Butterfly valve 22: A structure installed on the diversion and delivery pipe 21. By controlling its opening and closing, the output flow of the diversion and delivery pipe 21 is adjusted, thereby adjusting the output flow and internal pressure of the entire device.
[0058] Sterilization filtration device frame 23: The outer shell structure of the sterilization filtration device 6, used to accommodate the filter membrane plate frame 24 and the filter chamber 25;
[0059] Filter membrane plate frame 24: A structure located in the middle of the filter chamber 25 inside the shell frame 23 of the sterilization filter device, which divides the filter chamber 25 into two parts. The semi-permeable membrane inside can block microorganisms and achieve sterilization.
[0060] Filter chamber 25: A structure located inside the shell 23 of the sterilization filter device. One side is sealed to the diversion conveying pipe 21, and the other side is connected to the discharge port. It is the working space for sterilizing honey.
[0061] Working Principle: At the beginning of the process, the honey raw material enters the device through the inlet of the bow-shaped conveying pipe 1, aided by the pumping action of a liquid pump. The bow-shaped conveying pipe 1 is a vertically placed, curved pipe. This unique shape design helps the honey form a special flow pattern within the pipe, creating favorable conditions for subsequent impurity removal and sterilization operations. When the honey enters the bow-shaped conveying pipe 1, it first encounters the lower baffle 2 and the upper baffle 3. The lower baffle 2 is located at the first upper bend of the bow-shaped conveying pipe 1. Since large particles of impurities in honey, such as bee carcasses, sawdust, dust, and soil, usually settle at the bottom, the lower baffle mesh 10 intercepts these easily sinking large particles as the honey flows through the lower baffle 2. The lower baffle 2 is engaged with the lower baffle groove 7 via a lower baffle block 8 and fixed to the bow-shaped conveying pipe 1 using a fixing collar 11. Simultaneously, the sealing gasket 9 ensures a tight seal, preventing honey leakage. The upper baffle 3 is located at the first lower bend of the bow-shaped conveying pipe 1. Large particles of impurities that easily float to the surface, such as beeswax fragments, propolis fragments, and undecomposed aggregated pollen particles produced during honeycomb dewatering, are intercepted by the upper filter screen 14. The upper filter screen 3 is also engaged with the upper filter slot 12 via the upper filter block 13 and secured with a fixing ring 11, while the sealing gasket 9 ensures a tight seal. Through the initial interception by the lower filter screen 2 and the upper filter screen 3, large particles of impurities in the honey are initially removed, reducing the pressure on subsequent filtration devices. The honey, after initial impurity removal, then enters the primary filtration assembly 4. The primary filter screen mounting frame 15 in the primary filtration assembly 4 is sealed to the arc-shaped conveying pipe 1 via a flange 16, and the internal primary filter screen frame 17 intercepts impurities in the honey conveying channel. The primary filter screen frame 17 contains primary filter discs; tilting it increases the usable area and further filters impurities from the honey. Subsequently, the honey enters the secondary filtration assembly 5. The secondary filter housing 18 is sealed to the arc-shaped conveying pipe 1 via flange 16. The internal secondary filter screen frame 19 intercepts the honey conveying channel, and a buffer chamber 20 is provided on one side. The mesh size of the secondary filter screen in the secondary filter screen frame 19 is smaller than that of the primary filter screen. This multi-stage filtration effectively removes fine impurities from the honey and extends the lifespan of the filter screen. Multiple diversion conveying pipes 21 are located at the bottom of the buffer chamber 20, each equipped with a butterfly valve 22. The diversion conveying pipes 21 and butterfly valves 22 regulate the output flow rate and filtration pressure. When all diversion conveying pipes 21 are connected, the output reaches its maximum, but the filtration pressure is lowest, resulting in relatively poor filtration quality. When some diversion conveying pipes 21 are closed, the cross-sectional area of the output decreases, the filtration pressure increases, the flow rate increases, and the filtration quality improves. However, excessive pressure increases the wear and tear on the filter screen; therefore, a suitable filtration mode can be selected according to different product grades. After undergoing multi-stage filtration and flow regulation, the honey enters the sterilization and filtration device 6 through the diversion and delivery pipe 21.The sterilization and filtration device 6 consists of a sterilization and filtration device frame 23, a filter membrane plate frame 24, and a filtration chamber 25. The filter membrane plate frame 24 divides the filtration chamber 25 into two parts, each containing a semi-permeable membrane with micropores typically smaller than 0.45 μm. This membrane effectively traps microorganisms without damaging the honey's components, preserving its natural characteristics. After passing through the semi-permeable membrane, bacteria are intercepted, and the honey is discharged from the outlet for direct canning and packaging. In summary, this honey sterilization and impurity removal device achieves efficient sterilization and impurity removal of honey through a series of steps including feeding, preliminary impurity removal, multi-stage filtration, flow and pressure regulation, and sterilization, ensuring the quality and grade of the honey.
[0062] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A honey sterilization and impurity removal device, characterized in that: The utility model provides a honey conveying device, including arc conveying pipeline (1), one end of arc conveying pipeline (1) is feed inlet, downstream of arc conveying pipeline (1) is provided with lower slag baffle (2) in proper order, upper slag baffle (3), first filter assembly (4) and secondary filter assembly (5), the output of secondary filter assembly (5) is sealedly connected with sterilization filter device (6), and the output of sterilization filter device (6) is discharge port.
2. The honey bacteria and impurities removing device according to claim 1, characterized in that: The first upper elbow of the arc conveying pipeline (1) is provided with a lower slag baffle (2) cooperating with the elbow, a lower slag clamping groove (7) is formed on the side wall of the arc conveying pipeline (1), a lower slag clamping block (8) corresponding to the lower slag clamping groove (7) is arranged on the lower slag baffle (2), the lower slag clamping block (8) is clamped in the lower slag clamping groove (7), a sealing gasket (9) is arranged on the side wall of the arc conveying pipeline (1) away from the lower slag clamping groove (7), a lower slag baffle screen plate (10) is arranged in the lower slag baffle (2), a fixing collar (11) is arranged on the outside of the lower slag baffle (2), and the lower slag baffle (2) is fixedly installed on the arc conveying pipeline (1) through the fixing collar (11).
3. The honey bacteria and impurities removing device according to claim 2, characterized in that: The first lower elbow of the arc conveying pipeline (1) is provided with an upper slag baffle (3) cooperating with the elbow, an upper slag clamping groove (12) is formed on the side wall of the arc conveying pipeline (1), an upper slag clamping block (13) corresponding to the upper slag clamping groove (12) is arranged on the upper slag baffle (3), the upper slag clamping block (13) is clamped in the upper slag clamping groove (12), a sealing gasket (9) is arranged on the side wall of the arc conveying pipeline (1) away from the upper slag clamping groove (12), an upper slag baffle screen plate (14) is arranged in the upper slag baffle (3), a fixing collar (11) is arranged on the outside of the upper slag baffle (3), and the upper slag baffle (3) is fixedly installed on the arc conveying pipeline (1) through the fixing collar (11).
4. The honey bacteria and impurities removing device according to claim 1, characterized in that: The first filter assembly (4) comprises a first filter screen plate fixing shell frame (15) and a first filter screen plate frame (17), flange pieces (16) are arranged on both sides of the first filter screen plate fixing shell frame (15), the first filter screen plate fixing shell frame (15) is sealingly connected with the arc conveying pipeline (1) through the flange pieces (16), a first filter screen plate frame (17) is arranged in the first filter screen plate fixing shell frame (15), and the first filter screen plate frame (17) is intercepted on the honey conveying channel.
5. The honey bacteria and impurities removing device according to claim 4, characterized in that: The secondary filter assembly (5) comprises a secondary filter shell frame (18) and a secondary filter screen plate frame (19), a flange piece (16) is arranged on one side of the secondary filter shell frame (18), the secondary filter shell frame (18) is sealingly connected with the arc conveying pipeline (1) through the flange piece (16), a secondary filter screen plate frame (19) is arranged in the secondary filter shell frame (18), the secondary filter screen plate frame (19) is intercepted on the honey conveying channel, and a buffer cavity (20) is arranged on one side of the secondary filter screen plate frame (19).
6. The honey bacteria and impurities removing device according to claim 5, characterized in that: A plurality of groups of shunt conveying pipes (21) are arranged at the bottom of the buffer cavity (20), a butterfly valve (22) is arranged on each group of shunt conveying pipes (21), the top end of the shunt conveying pipe (21) is sealingly connected with the buffer cavity (20), and the bottom end of the shunt conveying pipe (21) is sealingly connected with the sterilization filter device (6).
7. The honey bacteria and impurities removing device according to claim 6, characterized in that: The bacteria removing filter device (6) comprises a bacteria removing filter device shell frame (23), a bacteria filter membrane plate frame (24) and a filter cavity (25), the filter cavity (25) is arranged in the bacteria removing filter device shell frame (23), the middle part of the filter cavity (25) is provided with the bacteria filter membrane plate frame (24) for separating the filter cavity (25) into two parts, a plurality of component diversion conveying pipes (21) are sealingly connected with one side of the filter cavity (25), and the side, away from the diversion conveying pipe (21), of the filter cavity (25) is sealingly connected with a discharge port.